Inside-out growth and the kiloparsec-scale star formation main sequence for low-surface-brightness disk galaxies in MaNGA
Bing-qing Zhang, Ze-hao Zhong, Yi-nan Zhu, Hong Wu
Abstract
Low surface brightness galaxies (LSBGs) are very faint objects in the universe whose formation and evolution have long remained an unresolved problem. We selected a late-type, face-on, and disk-dominated galaxy sample from the MaNGA survey, composed of 38 LSBGs and 216 high surface brightness galaxies (HSBGs) by adopting a central surface brightness threshold μ0(g) = 22.0\ mag\ arcsec-2. Based on maps derived from pipe3D products of star-forming areas in galaxies, we investigated the global and resolved star formation main sequence (SFMS and rSFMS) and radial profiles of the stellar mass density (Σ*), star formation rate density (ΣSFR), and specific star formation rate (ΣsSFR). The radial profiles of Σ* and ΣSFR present negative gradients, while those of ΣsSFR present positive gradients. Compared to HSBGs, the LSBGs show similar, flatter, and steeper slopes in Σ*, ΣSFR, and ΣsSFR gradients, respectively. The very flat ΣSFR gradients of LSBGs, whose slopes range from -0.1 to -0.2, indicates uniform star formation throughout the whole galaxy, and the positive ΣsSFR gradients reflects their ``inside-out'' growth. Our LSBGs and HSBGs follow the same global and resolved SFMS as the full sample, and μ0 shows no influence on both SFMS and rSFMS. For our full sample and two subsamples (HSBGs and LSBGs), the slopes of global SFMS and rSFMS are consistent, which indicates that the SFMS still hold on a kiloparsec scale and the star formation activities are regulated by local events. The treatment of different excitation sources in galaxies affects the slope of the SFMS and rSFMS, and using star-forming areas only is more advisable.
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